TY - JOUR
T1 - Thermally assisted Pauli spin blockade in double quantum dots
AU - Kondo, M.
AU - Miyota, S.
AU - Izumida, W.
AU - Amaha, S.
AU - Hatano, Tsuyoshi
N1 - Funding Information:
We thank M. Ikeda, S. Kawamagari, D. Annaka, H. Itoh, T. Kato, and A. Kowata for discussions and comments. T.H. acknowledges the research grant of the College of Engineering, Nihon University. W.I. acknowledges support from KAKENHI Grants No. JP15K05118 and No. JP18H04282.
Publisher Copyright:
© 2021 American Physical Society.
PY - 2021/4/16
Y1 - 2021/4/16
N2 - We investigate the influence of thermal energy on the current flow and electron spin states in double quantum dots in series. The quadruplet Pauli spin blockade, which is caused by the quadruplet and doublet states, occurs at low temperatures affecting the transport properties. As the temperature increases, the quadruplet Pauli spin blockade occurs as a result of the thermal energy, even in regions where it does not occur at low temperatures. This is because the triplet state is formed in one dot as a result of the gradual change of the Fermi distribution function of the electrodes with increasing temperature. Moreover, the thermally assisted Pauli spin blockade results in coexistence of the Coulomb and Pauli spin blockades. Conversely, for the standard triplet Pauli spin blockade, which occurs as a result of the triplet and singlet states, the current through the double dots monotonously smears out as the temperature increases. Therefore, the thermally assisted Pauli spin blockade is not clearly observed. However, the coexistence of the Coulomb and triplet Pauli spin blockades as a result of the thermal energy is clearly obtained in the calculation of the probability of the spin state in the double dots.
AB - We investigate the influence of thermal energy on the current flow and electron spin states in double quantum dots in series. The quadruplet Pauli spin blockade, which is caused by the quadruplet and doublet states, occurs at low temperatures affecting the transport properties. As the temperature increases, the quadruplet Pauli spin blockade occurs as a result of the thermal energy, even in regions where it does not occur at low temperatures. This is because the triplet state is formed in one dot as a result of the gradual change of the Fermi distribution function of the electrodes with increasing temperature. Moreover, the thermally assisted Pauli spin blockade results in coexistence of the Coulomb and Pauli spin blockades. Conversely, for the standard triplet Pauli spin blockade, which occurs as a result of the triplet and singlet states, the current through the double dots monotonously smears out as the temperature increases. Therefore, the thermally assisted Pauli spin blockade is not clearly observed. However, the coexistence of the Coulomb and triplet Pauli spin blockades as a result of the thermal energy is clearly obtained in the calculation of the probability of the spin state in the double dots.
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U2 - 10.1103/PhysRevB.103.155414
DO - 10.1103/PhysRevB.103.155414
M3 - Article
AN - SCOPUS:85104375245
SN - 2469-9950
VL - 103
JO - Physical Review B
JF - Physical Review B
IS - 15
M1 - 155414
ER -